Department of Neuroscience, Erasmus Medical Center, 3015GE Rotterdam, Netherlands.
J Cell Biol. 2013 Jun 10;201(6):915-28. doi: 10.1083/jcb.201301011.
The presynaptic active zone mediates synaptic vesicle exocytosis, and modulation of its molecular composition is important for many types of synaptic plasticity. Here, we identify synaptic scaffold protein liprin-α2 as a key organizer in this process. We show that liprin-α2 levels were regulated by synaptic activity and the ubiquitin-proteasome system. Furthermore, liprin-α2 organized presynaptic ultrastructure and controlled synaptic output by regulating synaptic vesicle pool size. The presence of liprin-α2 at presynaptic sites did not depend on other active zone scaffolding proteins but was critical for recruitment of several components of the release machinery, including RIM1 and CASK. Fluorescence recovery after photobleaching showed that depletion of liprin-α2 resulted in reduced turnover of RIM1 and CASK at presynaptic terminals, suggesting that liprin-α2 promotes dynamic scaffolding for molecular complexes that facilitate synaptic vesicle release. Therefore, liprin-α2 plays an important role in maintaining active zone dynamics to modulate synaptic efficacy in response to changes in network activity.
突触前活性区介导突触小泡胞吐,其分子组成的调节对于多种类型的突触可塑性非常重要。在这里,我们确定突触支架蛋白 liprin-α2 是该过程的关键组织者。我们表明,liprin-α2 的水平受突触活动和泛素-蛋白酶体系统的调节。此外,liprin-α2 通过调节突触小泡库大小来组织突触的超微结构并控制突触输出。liprin-α2 在突触前部位的存在不依赖于其他活性区支架蛋白,但对于募集包括 RIM1 和 CASK 在内的几种释放机制成分是关键的。光漂白荧光恢复后显示,liprin-α2 的耗竭导致突触前末端的 RIM1 和 CASK 的周转率降低,表明 liprin-α2 促进了促进突触小泡释放的分子复合物的动态支架的形成。因此,liprin-α2 在维持活性区动力学以响应网络活动变化调节突触效能方面发挥着重要作用。